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View Protein Complex Details

Complex Overview

From Publication: Mewes, H. W. et al. MIPS: Analysis and annotation of proteins from whole genomes. Nucleic Acids Res. 32, D41-D44
Notes: MIPS hand-curated complex set. MIPS complex ID: 510.180.30.30
Complex Size: 3 proteins

Complex Member Proteins

Cellular Component Analysis

Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

Only showing terms with a p-value less than or equal to 0.01.

GO Term

P-value

A

B

I

T

Mre11 complex 2.4099E-11 3 3 3 6292
nuclear part 5.3751E-3 3 1103 3 6292
protein complex 5.8881E-3 3 1137 3 6292

Biological Process Analysis

Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

Only showing terms with a p-value less than or equal to 0.01.

GO Term

P-value

A

B

I

T

double-strand break repair via break-induced replication 2.0243E-9 3 9 3 6292
meiotic DNA double-strand break formation 3.9763E-9 3 11 3 6292
double-strand break repair via homologous recombination 3.7112E-8 3 22 3 6292
double-strand break repair via nonhomologous end joining 5.5427E-8 3 25 3 6292
recombinational repair 6.2656E-8 3 26 3 6292
non-recombinational repair 1.4421E-7 3 34 3 6292
nucleic acid phosphodiester bond hydrolysis 3.6582E-7 3 46 3 6292
meiotic DNA double-strand break processing 4.5469E-7 3 3 2 6292
double-strand break repair 7.0513E-7 3 57 3 6292
DNA catabolic process, exonucleolytic 1.5153E-6 3 5 2 6292
DNA double-strand break processing 1.5153E-6 3 5 2 6292
meiosis I 1.9057E-6 3 79 3 6292
DNA recombination 5.7949E-6 3 114 3 6292
DNA catabolic process 1.5894E-5 3 15 2 6292
M phase of meiotic cell cycle 1.6144E-5 3 160 3 6292
meiosis 1.6144E-5 3 160 3 6292
meiotic cell cycle 1.7394E-5 3 164 3 6292
DNA repair 2.7985E-5 3 192 3 6292
response to DNA damage stimulus 5.2124E-5 3 236 3 6292
anatomical structure homeostasis 9.2976E-5 3 286 3 6292
telomere organization 9.2976E-5 3 286 3 6292
telomere maintenance 9.2976E-5 3 286 3 6292
cellular response to stress 9.6946E-5 3 290 3 6292
M phase 1.0103E-4 3 294 3 6292
cell cycle phase 2.118E-4 3 376 3 6292
cellular response to stimulus 2.1693E-4 3 379 3 6292
homeostatic process 2.7078E-4 3 408 3 6292
cell cycle process 4.6964E-4 3 490 3 6292
response to stress 4.901E-4 3 497 3 6292
cell cycle 5.7787E-4 3 525 3 6292
regulation of biological quality 6.6823E-4 3 551 3 6292
chromosome organization 6.8292E-4 3 555 3 6292
DNA metabolic process 7.9998E-4 3 585 3 6292
response to stimulus 1.7981E-3 3 766 3 6292
cellular macromolecule catabolic process 5.1545E-3 3 265 2 6292
organelle organization 5.734E-3 3 1127 3 6292
macromolecule catabolic process 6.3267E-3 3 294 2 6292
biological regulation 7.1507E-3 3 1213 3 6292
telomere maintenance via recombination 7.6106E-3 3 16 1 6292

Molecular Function Analysis

Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

Only showing terms with a p-value less than or equal to 0.01.

GO Term

P-value

A

B

I

T

telomeric DNA binding 5.3017E-9 3 12 3 6292
sequence-specific DNA binding 4.7233E-7 3 50 3 6292
adenylate kinase activity 9.0929E-7 3 4 2 6292
nucleotide kinase activity 2.2727E-6 3 6 2 6292
phosphotransferase activity, phosphate group as acceptor 8.329E-6 3 11 2 6292
nucleobase, nucleoside, nucleotide kinase activity 9.9937E-6 3 12 2 6292
DNA binding 6.6597E-5 3 256 3 6292
protein binding 9.1614E-4 3 612 3 6292
nucleic acid binding 1.1811E-3 3 666 3 6292
kinase activity 3.6317E-3 3 222 2 6292
binding 8.6823E-3 3 1294 3 6292

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